Stehlikova Kristyna, Kostrhunova Hana, Kasparkova Jana, Brabec Viktor
Institute of Biophysics, Academy of Sciences of the Czech Republic, Královopolská 135, CZ-61265 Brno, Czech Republic.
Nucleic Acids Res. 2002 Jul 1;30(13):2894-8. doi: 10.1093/nar/gkf405.
Antitumor cisplatin [cis-diamminedichloroplatinum(II)] forms on DNA predominantly intrastrand cross-links between neighboring purine residues. Several discoveries suggested that the toxicity of cisplatin originated from these lesions. The formation of 1,2-GG intrastrand cross-link of cisplatin leads to marked conformational alterations in DNA including a directional, rigid bend toward the major groove and local unwinding. These altered structures attract various cellular proteins. This phenomenon has been postulated to mediate antitumor properties of cisplatin. Importantly, the binding affinity of several proteins that specifically recognize 1,2-GG intrastrand cross-link to platinated DNA is modulated by the nature of the base pairs that immediately flank the platinated d(GpG) site. However, the influence of sequence context on DNA bending and unwinding due to the formation of the 1,2-GG intrastrand cross-link has not been extensively investigated. In the present study we have employed electrophoretic retardation (phasing) assay to analyze bending and unwinding induced by the single, site-specific 1,2-GG intrastrand cross-link immediately flanked by various bases formed by cisplatin in nine oligodeoxyribonucleotide duplexes. The results indicate that bending and unwinding of DNA as a consequence of the formation of the major adduct of cisplatin is, in the first approximation, independent of the base pairs flanking the platinated d(GpG) site.
抗肿瘤药物顺铂[顺-二氨二氯铂(II)]在DNA上主要形成相邻嘌呤残基之间的链内交联。多项发现表明顺铂的毒性源于这些损伤。顺铂的1,2-GG链内交联的形成会导致DNA发生显著的构象改变,包括向大沟方向的定向、刚性弯曲以及局部解旋。这些改变的结构会吸引各种细胞蛋白。据推测,这一现象介导了顺铂的抗肿瘤特性。重要的是,几种特异性识别1,2-GG链内交联的蛋白质与铂化DNA的结合亲和力会受到紧邻铂化d(GpG)位点的碱基对性质的调节。然而,由于1,2-GG链内交联的形成,序列背景对DNA弯曲和解旋的影响尚未得到广泛研究。在本研究中,我们采用电泳延迟(定相)分析法,分析了由顺铂在九条寡脱氧核糖核苷酸双链体中形成的、紧邻各种碱基的单个位点特异性1,2-GG链内交联所诱导的弯曲和解旋。结果表明,顺铂主要加合物形成导致的DNA弯曲和解旋,初步来看,与铂化d(GpG)位点两侧的碱基对无关。